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过限电流和去离子“冲击”在电流极化中的作用:局部平衡分析。

Over-limiting currents and deionization "shocks" in current-induced polarization: local-equilibrium analysis.

机构信息

ICREA and Department of Chemical Engineering, Polytechnic University of Catalonia, Barcelona, Spain.

出版信息

Adv Colloid Interface Sci. 2012 Nov 15;183-184:68-81. doi: 10.1016/j.cis.2012.08.004. Epub 2012 Aug 21.

Abstract

The problem is considered theoretically of dynamics of current-induced concentration polarization of interfaces between ideally perm-selective and non-ideally perm-selective ("leaky") ion-exchange media in binary electrolyte solutions under galvanostatic conditions and at negligible volume flow. In contrast to the previous studies, the analysis is systematically carried out in terms of local thermodynamic equilibrium in the approximation of local electric neutrality in virtual solution. For macroscopically homogeneous media, this enables one to obtain model-independent results in quadratures for the stationary state as well as an approximate scaling-form solution for the transient response to the step-wise increase in electric-current density. These results are formulated in terms of such phenomenological properties of the "leaky" medium as ion transport numbers, diffusion permeability to salt and specific chemical capacity. An easy-to-solve numerically 1D PDE is also formulated in the same terms. A systematic parametric study is carried out within the scope of fine-pore model of "leaky" medium in terms of such properties as volumetric concentration of fixed electric charges and diffusivities of ions of symmetrical electrolyte. While previous studies paid principal attention to the shape and propagation rate of the so-called deionization "shocks", we also consider in detail the time evolution of voltage drop and interface salt concentration. Our analysis confirms the previously predicted pattern of propagating deionization "shocks" within the "leaky" medium but also reveals several novel features. In particular, we demonstrate that the deionization-shock pattern is really pronounced only at intermediate ratios of fixed-charge concentration to the initial salt concentration and at quite high steady-state voltages where the model used in this and previous studies is applicable only at relatively early stages of concentration-polarization process.

摘要

问题被认为是在电流感应界面浓度极化的动力学理论方面的,在恒电流条件下和可忽略的体积流下,理想的选择渗透性和非理想的选择渗透性(“漏泄”)离子交换介质之间的界面处于二元电解质溶液中。与以前的研究相比,分析是在虚拟溶液局部电中性近似下,根据局部热力学平衡进行的。对于宏观均匀介质,这使得能够以积分形式获得稳态的无模型结果,以及对电流密度阶跃增加的瞬态响应的近似标度形式解。这些结果是用“漏泄”介质的离子输运数、盐扩散渗透率和比化学容量等唯象性质来表示的。还以相同的术语形式提出了易于数值求解的一维偏微分方程。在“漏泄”介质的细孔模型范围内,针对固定电荷的体积浓度和对称电解质离子的扩散率等性质,进行了系统的参数研究。虽然以前的研究主要关注所谓的去离子“冲击波”的形状和传播速度,但我们还详细考虑了电压降和界面盐浓度的时间演化。我们的分析证实了先前在“漏泄”介质中传播去离子“冲击波”的预测模式,但也揭示了一些新的特征。特别是,我们证明,只有在固定电荷浓度与初始盐浓度的比值适中,并且在稳态电压相当高的情况下,去离子冲击模式才真正明显,而在这种情况下,以及以前的研究中使用的模型仅适用于浓度极化过程的相对早期阶段。

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